WO2024051111A1 - 灯光设备联动控制系统及其灯光设备联动控制方法 - Google Patents

灯光设备联动控制系统及其灯光设备联动控制方法 Download PDF

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Publication number
WO2024051111A1
WO2024051111A1 PCT/CN2023/078376 CN2023078376W WO2024051111A1 WO 2024051111 A1 WO2024051111 A1 WO 2024051111A1 CN 2023078376 W CN2023078376 W CN 2023078376W WO 2024051111 A1 WO2024051111 A1 WO 2024051111A1
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WIPO (PCT)
Prior art keywords
lighting
linkage
bluetooth
lighting device
data
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PCT/CN2023/078376
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English (en)
French (fr)
Inventor
徐�明
吴凯华
唐林
孙斌
徐盎
张少峰
潘溢智
黄伟鹏
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深圳市集贤科技有限公司
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Publication of WO2024051111A1 publication Critical patent/WO2024051111A1/zh

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Classifications

    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/155Coordinated control of two or more light sources
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/175Controlling the light source by remote control
    • H05B47/19Controlling the light source by remote control via wireless transmission

Definitions

  • the present application relates to the field of lighting control technology, and in particular to a lighting equipment linkage control system and a lighting equipment linkage control method.
  • lighting fixtures can not only meet lighting needs, but also create the atmosphere of different life scenarios through intelligent settings such as setting scenes, linking with media playback equipment, and changing with time and seasons.
  • the existing lighting linkage control technology requires remote background services to pre-program and set scenes, associate and bind multiple lighting devices, and set up master control devices to achieve lighting linkage.
  • this kind of control technology cannot satisfy the user’s immediate experience of installation and use, and it cannot allow users to experience immersive lighting effects.
  • there are communication delays, poor stability, and loss of data problems such as high package rates.
  • embodiments of the present application provide a lighting equipment linkage control system and a lighting equipment linkage control method, aiming to at least solve the problem of the inability to experience lighting effects immediately in the existing technology, high communication delay, and poor stability during the linkage control process. , one of the problems such as high packet loss rate.
  • the first aspect of the embodiment of the present application provides a lighting equipment linkage control system.
  • the system includes a main lighting equipment and at least one sub-lighting equipment.
  • the main lighting equipment and the sub-lighting equipment are broadcast through Bluetooth MESH network.
  • Linkage is carried out in the form of messages, among which:
  • the main lighting device broadcasts a Bluetooth message when the linkage function is activated, wherein the Bluetooth message carries lighting linkage data;
  • the sub-lighting device receives the Bluetooth message and parses the Bluetooth message, obtains the lighting linkage data carried in the Bluetooth message, and performs linkage with the main lighting device according to the lighting linkage data.
  • the second aspect of the embodiment of the present application provides a lighting equipment linkage control method.
  • the method is applied to the main lighting equipment and includes:
  • a Bluetooth message is generated according to the lighting linkage data, and the Bluetooth message is broadcast through the Bluetooth MESH network to broadcast the Bluetooth message to the sub-lighting device.
  • the color data is subjected to sub-lighting device matching processing so that the color data has a corresponding device identity, and the color data with the device identity is configured as lighting linkage data.
  • color data that needs to be displayed by the main lighting device is obtained, and the color data is configured as lighting linkage After the data step, it also includes:
  • the lighting linkage data is encrypted so that the lighting linkage data exists in ciphertext form.
  • a Bluetooth message is generated according to the lighting linkage data, and the Bluetooth message is broadcast through the Bluetooth MESH network to broadcast the Bluetooth message to the sub-lighting device.
  • the steps before the message also include:
  • the radio frequency power of the main lighting device is adjusted according to a preset power adjustment rule to determine the broadcasting distance of the main lighting device.
  • a Bluetooth message is generated according to the lighting linkage data, and the Bluetooth message is broadcast through the Bluetooth MESH network to broadcast the Bluetooth message to the sub-lighting device.
  • the steps before the message also include:
  • Protocol stack parameters of the Bluetooth MESH network in the Bluetooth communication layer include at least one of broadcast interval parameters, broadcast frequency parameters, message forwarding times, and fast network distribution parameters.
  • the third aspect of the embodiment of the present application provides a lighting equipment linkage control method.
  • the method is applied to sub-lighting equipment and includes:
  • a lighting control file is generated according to the lighting linkage data, and a lighting operation is performed according to the lighting control file.
  • the step of parsing the Bluetooth message and obtaining the lighting linkage data carried in the Bluetooth message includes:
  • the Bluetooth message originates from the main lighting device, the message is parsed according to the Bluetooth MESH network to obtain the lighting linkage data ciphertext;
  • the steps of generating a lighting control file according to the lighting linkage data, and performing a lighting operation according to the lighting control file include:
  • a dimming curve based on the brightness change of the lighting device in the light control file to perform a lighting operation on the sub-lighting device according to the dimming curve, wherein the brightness change amplitude in the dimming curve is the same as the brightness change.
  • the real-time brightness value of the lighting equipment is positively related.
  • a fourth aspect of the embodiments of the present application provides a computer-readable storage medium.
  • the computer-readable storage medium stores a computer program.
  • any one of the second aspect or the third aspect is implemented.
  • Each step of the lighting equipment linkage control method is provided.
  • the lighting equipment linkage control system includes a main lighting equipment and at least one sub-lighting equipment.
  • the main lighting equipment and the sub-lighting equipment are linked through Bluetooth MESH network broadcast messages.
  • a Bluetooth message carrying lighting linkage data is broadcast.
  • the sub-lighting device receives and parses the Bluetooth message to obtain the lighting linkage data carried in the Bluetooth message, and then links with the main lighting device based on the lighting linkage data.
  • the system broadcasts messages through the Bluetooth MESH network, which can meet the user's instant experience of installation and use and watch and use, allowing users to experience immersive lighting effects, and solves the high communication delay and poor stability in the linkage control process. , high packet loss rate and other issues.
  • Figure 1 is a schematic structural diagram of a lighting equipment linkage control system provided by an embodiment of the present application
  • Figure 2 is a flow chart of a lighting equipment linkage control method applied to main lighting equipment provided by an embodiment of the present application
  • Figure 3 is a flow chart of a lighting equipment linkage control method applied to sub-lighting equipment provided by an embodiment of the present application
  • Figure 4 is a flow chart of a method for parsing Bluetooth messages in the lighting device linkage control method applied to sub-lighting devices provided by the embodiment of the present application;
  • FIG. 5 is a basic structural block diagram of an electronic device provided by an embodiment of the present application.
  • FIG. 1 is a schematic structural diagram of a lighting equipment linkage control system provided by an embodiment of the present application.
  • the lighting equipment linkage control system includes a main lighting equipment 11 and at least one sub-lighting equipment 12.
  • the main lighting device 11 and the sub-lighting device 12 are connected through Bluetooth MESH network, and are linked through broadcast messages.
  • the MESH network is a wireless mesh network.
  • the main lighting device 11 can activate the linkage function after entering the TV mode or MUSIC mode.
  • the linkage function of the main lighting device 11 can be started by sending a start command through the mobile terminal software (APP) or the remote control, or you can wait for the main lighting device 11 to automatically start the linkage function.
  • APP mobile terminal software
  • the main lighting device 11 in TV mode or MUSIC mode, communicates with the TV screen through the IIC bus, reads color data from the color sensor of the TV screen, and stores the read color data into a data in memory.
  • the color data stored in the data memory is used for lighting linkage.
  • the main lighting device 11 can obtain color data from the data storage and use a microcontrol processor (MCU) to perform conversion processing on the color data to convert the color data into RGB color values. Or a magic light with data value.
  • MCU microcontrol processor
  • the main lighting device 11 After the main lighting device 11 starts the linkage function, it broadcasts a Bluetooth message through the Bluetooth MESH network, and carries the RGB color value or the magic light strip data value as lighting linkage data in the Bluetooth message.
  • the sub-lighting device 12 can receive the Bluetooth message broadcast by the main lighting device 11 through the Bluetooth MESH network. After receiving the Bluetooth message, the sub-lighting device 12 obtains the lighting linkage data carried in the Bluetooth message by parsing and processing the Bluetooth message, and then performs the corresponding lighting operation based on the lighting linkage data, thereby realizing communication with the host based on the lighting linkage data.
  • the lighting equipment 12 is linked.
  • the lighting equipment linkage control system implemented by the embodiment of the present application implements message sending and receiving between the main lighting equipment and the sub-lighting equipment through the Bluetooth MESH network broadcast message, so that the main lighting equipment and the sub-lighting equipment can communicate with each other.
  • Lighting linkage can satisfy users' instant experience of installing and using and watching and using, allowing users to experience immersive lighting effects, and solves the problems of high communication delay, poor stability, and high packet loss rate in the linkage control process.
  • Figure 2 is a flow chart of a lighting equipment linkage control method applied to main lighting equipment provided by an embodiment of the present application. Details are as follows:
  • S22 Generate a Bluetooth message according to the lighting linkage data, and perform broadcast processing on the Bluetooth message through the Bluetooth MESH network to broadcast the Bluetooth message to the sub-lighting device.
  • the main lighting device can obtain the color data to be displayed from the data storage. After obtaining the color data, the color data is converted using a microcontroller processor (MCU) to convert the color data into an RGB color value or a magic light strip data value, and then the RGB color value or a magic light strip data value is converted into The data value is configured as the lighting linkage data used to link with the sub-lighting device.
  • MCU microcontroller processor
  • the main lighting device After the main lighting device is configured with lighting linkage data, it can generate a Bluetooth message based on the lighting linkage data, so that the generated Bluetooth message carries the lighting linkage data. Furthermore, the Bluetooth message is broadcast through the Bluetooth MESH network, and the Bluetooth message is broadcast to the Bluetooth MESH network.
  • the main lighting device activates the linkage function
  • the main lighting device and the sub-lighting device are both in the Bluetooth MESH network
  • the sub-lighting device is in the Bluetooth MESH network.
  • the lighting device can monitor the Bluetooth messages broadcast by the main lighting device in the Bluetooth MESH network, thereby broadcasting the Bluetooth messages to the sub-lighting devices.
  • the color data after obtaining the color data that the main lighting device needs to display, when configuring the color data as lighting linkage data, the color data can be matched with sub-lighting devices so that the color data has a corresponding device.
  • Identity configure the color data with the device identity as lighting linkage data. For example, if there is only one RGB color value in the color data, the device identities of all sub-lighting devices linked to the main lighting device can be obtained, and the RGB color value can be mapped and associated with the device identities of all sub-lighting devices. relationship, so that the RGB color value has a corresponding device identity.
  • the main lighting equipment and all sub-lighting equipment will perform lighting display according to the RGB color value.
  • the color data contains multiple RGB color values
  • the device identities of all sub-lighting devices linked to the main lighting device can be obtained, and the different RGB color values can be associated with the device identities of different sub-lighting devices.
  • Establish a mapping association so that different RGB color values are associated with different device identities.
  • One RGB color value can be associated with one or more different device identities, thereby forming magic light strip data.
  • the magic light strip data After configuring the magic light strip data as lighting linkage data, when the main lighting equipment is linked with the sub-lighting equipment, different sub-lighting equipment will perform light display according to their respective associated RGB color values to realize the linkage with the main lighting equipment to display the magic light. Lighting effects.
  • an encryption algorithm may also be set in the main lighting device to encrypt data.
  • the lighting linkage data can be encrypted using an encryption algorithm so that the lighting linkage data exists in ciphertext. Then, when the main lighting device broadcasts a message, the lighting linkage data is carried in the Bluetooth message in the form of ciphertext, thereby broadcasting the lighting linkage data ciphertext to the Bluetooth MESH network to ensure the security of the lighting linkage data.
  • the power adjustment rule before the main lighting device broadcasts the Bluetooth message, can also be set through the f(add_power) function.
  • the radio frequency of the main lighting device is adjusted. Power, to determine the broadcast distance of the main lighting equipment, ensure the radio frequency emission range, and avoid the linkage equipment being too close.
  • the power adjustment rule set through the f(add_power) function is to adjust the radio frequency power of the main lighting device to the maximum to ensure the distance of the linked sub-lighting devices.
  • the protocol stack parameters of the Bluetooth MESH network in the Bluetooth communication layer can also be modified through the f(adv_set) function, thereby realizing the main lighting device in the Bluetooth MESH network.
  • the protocol stack parameters include but are not limited to broadcast interval parameters, broadcast frequency parameters, message forwarding times, fast network configuration parameters, etc.
  • the broadcast interval parameters include the minimum broadcast interval and the maximum broadcast interval.
  • Fast distribution network parameters include NET KEY, APP KEY and other parameters in the standard sig mesh protocol. It can be understood that in this embodiment, the number of message forwarding times is modified to one.
  • FIG. 3 is a flow chart of a lighting equipment linkage control method applied to sub-lighting equipment provided by an embodiment of the present application. Details are as follows:
  • S31 Receive Bluetooth messages broadcast by the main lighting device
  • S33 Generate a lighting control file according to the lighting linkage data, and perform a lighting operation according to the lighting control file.
  • a communication connection is established between the main lighting device and the sub-lighting device through the Bluetooth MESH network.
  • the sub-lighting device can discover the Bluetooth messages broadcast by the main lighting device to the Bluetooth MESH network by monitoring messages in the Bluetooth MESH network.
  • the sub-lighting device monitors the Bluetooth message broadcast by the main lighting device to the Bluetooth MESH network, it can obtain the monitored Bluetooth message from the Bluetooth MESH network, thereby receiving the Bluetooth message broadcast by the main lighting device.
  • the sub-lighting device can parse and process the Bluetooth message to obtain the lighting linkage data carried in the Bluetooth message.
  • a lighting control file can be generated based on the lighting linkage data, so that the sub-lighting device performs a lighting operation according to the lighting control file.
  • parameters such as the duration value of the lighting process, the light color value, and the target value of the light brightness are set in the light control file.
  • FIG. 4 is a flow chart of a method for parsing Bluetooth messages in a lighting device linkage control method applied to sub-lighting devices provided by an embodiment of the present application. Details are as follows:
  • S41 Perform source verification on the Bluetooth message to determine whether the Bluetooth message originates from the main lighting device;
  • S43 Decrypt the cipher text of the lighting linkage data to obtain the lighting linkage data.
  • the sub-lighting device can verify the source of the Bluetooth message by identifying the header field of the Bluetooth message, and combine the device identity information representing the source device in the header field of the Bluetooth message with Compare the device identity of the main lighting device stored in the sub-lighting device when the network is configured. If the device identities are consistent, it is judged that the Bluetooth message comes from the main lighting device. Otherwise, it is judged that the Bluetooth message does not come from the main lighting device. For Bluetooth messages that do not originate from the main lighting device, the sub-lighting device discards the Bluetooth message and continues to receive other Bluetooth messages. When the Bluetooth message comes from the main lighting device, the Bluetooth message is parsed and processed according to the Bluetooth MESH network.
  • the main lighting device Before the main lighting device carries the lighting linkage data in the Bluetooth message, the main lighting device uses a preset encryption algorithm to encrypt the lighting linkage data, so that the lighting linkage data is transmitted in the form of ciphertext. Ensure data security.
  • the sub-lighting device After the sub-lighting device obtains the ciphertext of the lighting linkage data carried in the Bluetooth message, it can decrypt the lighting linkage data through the decryption algorithm in the sub-lighting device corresponding to the encryption algorithm set by the main lighting device, thereby obtaining the sub-lighting Lighting linkage data that can be directly used by the device.
  • the sub-lighting device is driven by pulse modulation (Pulse Width Modulation, PWM for short) to realize the lighting process.
  • PWM Pulse Width Modulation
  • the dimming curve based on the brightness change of the lighting device can be configured in the light control file generated by the sub-lighting device through the f (led_analysis) function, so that the lighting operation of the sub-lighting device can be performed according to the dimming curve.
  • the brightness change amplitude in the dimming curve is positively correlated with the real-time brightness value of the sub-lighting device.
  • a smaller brightness change amplitude can be configured for the lighting process when the sub-lighting device is at low brightness
  • a larger brightness change amplitude can be configured for the lighting process when the sub-lighting device is at high brightness.
  • the lighting process of a sub-lighting device is to adjust the brightness value from 0 to 1000.
  • the brightness change amplitude For intervals such as adjusting the brightness value from 0 to 50, from 50 to 100, etc., since the sub-lighting device is at low brightness, the visual impact on the human eye is relatively small. Strong, you can set a smaller brightness change amplitude for this interval. For example, set the brightness change amplitude to 2, that is, adjust the sub-lighting device from 0 to 50, from 50 to 100, etc.
  • the brightness value of the sub-lighting equipment during the entire lighting process can be increased in a curve that is first small and then large, avoiding the problems of jitter and flickering during the lighting process of the sub-lighting equipment, and making the display of the sub-lighting equipment more accurate.
  • the lighting effect is better.
  • the amplitude compensation time can also be increased in the interval with a large brightness value during the entire lighting process of the sub-lighting device, so that the brightness value of the sub-lighting device changes slowly first and then Fast curve growth.
  • sequence number of each step in the above embodiment does not mean the order of execution.
  • the execution order of each process should be determined by its function and internal logic, and should not constitute any influence on the implementation process of the embodiment of the present application. limited.
  • FIG. 5 is a basic structural block diagram of an electronic device provided by an embodiment of the present application.
  • the electronic device 5 of this embodiment includes: a processor 51, a memory 52, and a computer program 53 stored in the memory 52 and executable on the processor 51, such as a lighting equipment linkage control method. program of.
  • the processor 51 executes the computer program 53, the steps in each embodiment of the above-mentioned lighting equipment linkage control method are implemented.
  • the computer program 53 can be divided into one or more modules (units), and the one or more modules are stored in the memory 52 and executed by the processor 51 to complete the present invention. Apply the steps in each embodiment of each lighting equipment linkage control method.
  • the one or more modules may be a series of computer program instruction segments capable of completing specific functions. The instruction segments are used to describe the execution process of the computer program 53 in the electronic device 5 .
  • the electronic device may include, but is not limited to, a processor 51 and a memory 52 .
  • FIG. 5 is only an example of the electronic device 5 and does not constitute a limitation of the electronic device 5. It may include more or fewer components than shown in the figure, or some components may be combined, or different components may be used. , for example, the electronic device may also include input and output devices, network access devices, buses, etc.
  • the processor 51 may be a central processing unit (CPU), or other general-purpose processor, a digital signal processor (Digital Signal Processor, DSP), an application specific integrated circuit (Application Specific Integrated Circuit, ASIC), Ready-made field-programmable gate array (FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc.
  • a general-purpose processor may be a microprocessor or the processor may be any conventional processor, etc.
  • the memory 52 may be an internal storage unit of the electronic device 5 , such as a hard disk or memory of the electronic device 5 .
  • the memory 52 may also be an external storage device of the electronic device 5 , such as a plug-in hard disk, a smart memory card (Smart Media Card, SMC), or a secure digital (SD) equipped on the electronic device 5 card, Flash Card, etc.
  • the memory 52 may also include both an internal storage unit of the electronic device 5 and an external storage device.
  • the memory 52 is used to store the computer program and other programs and data required by the electronic device.
  • the memory 52 can also be used to temporarily store data that has been output or is to be output.
  • Embodiments of the present application also provide a computer-readable storage medium.
  • the computer-readable storage medium stores a computer program. When the computer program is executed by a processor, the steps in each of the above method embodiments can be implemented.
  • the computer-readable storage medium may be non-volatile or volatile.
  • Embodiments of the present application provide a computer program product.
  • the steps in each of the above method embodiments can be implemented when the mobile terminal is executed.
  • each functional unit and module in the embodiment can be integrated into one processing unit, or each unit can exist physically alone, or two or more units can be integrated into one unit.
  • the above-mentioned integrated unit can be hardware-based. It can also be implemented in the form of software functional units.
  • the specific names of each functional unit and module are only for the convenience of distinguishing each other and are not used to limit the scope of protection of the present application.
  • the integrated module/unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium.
  • the present application can implement all or part of the processes in the methods of the above embodiments, which can also be completed by instructing relevant hardware through a computer program.
  • the computer program can be stored in a computer-readable storage medium, and the computer can When the program is executed by the processor, the steps of each of the above method embodiments can be implemented.
  • the computer program includes computer program code, which may be in the form of source code, object code, executable file or some intermediate form.
  • the computer-readable medium may include: any entity or device capable of carrying the computer program code, recording media, U disk, mobile hard disk, magnetic disk, optical disk, computer memory, read-only memory (ROM, Read-Only Memory) , Random Access Memory (RAM, Random Access Memory), electrical carrier signals, telecommunications signals, and software distribution media, etc.
  • ROM Read-Only Memory
  • RAM Random Access Memory
  • electrical carrier signals telecommunications signals
  • software distribution media etc.

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Abstract

本申请属于灯光控制技术领域,提供一种灯光设备联动控制系统及其灯光设备联动控制方法,系统中包括主灯光设备和至少一个子灯光设备,所述主灯光设备与所述子灯光设备之间通过蓝牙MESH网络广播消息的方式进行联动,其中:所述主灯光设备在启动联动功能的情况下广播蓝牙消息,其中,所述蓝牙消息中携带有灯光联动数据;所述子灯光设备接收所述蓝牙消息并对所述蓝牙消息进行解析处理,获取所述蓝牙消息中携带的灯光联动数据,根据所述灯光联动数据与所述主灯光设备进行联动。基于该系统,可以满足用户即装即用和随看随用的即时体验,让用户体验沉浸式的灯光效果,解决联动控制过程中存在的通信高延迟、稳定性差、丢包率高等问题。

Description

灯光设备联动控制系统及其灯光设备联动控制方法
本申请要求于2022年09月05日在中国专利局提交的、申请号为202211079592.1、发明名称为“灯光设备联动控制系统及其灯光设备联动控制方法”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及灯光控制技术领域,尤其涉及一种灯光设备联动控制系统及其灯光设备联动控制方法。
背景技术
随着科技的发展,照明灯具除了可以满足照明需求外,还可以通过设置场景、与媒体播放设备联动、随时间季节变化等智能化营造出不同生活情景的氛围。目前,现有的灯光联动控制技术需要通过远程后台服务预先编程设置场景、关联绑定多个灯光设备以及设置主控设备等操作来实现灯光联动。然而,这样的控制技术不能满足用户即装即用和随看随用的即时体验,无法让用户体验沉浸式的灯光效果,且在多个灯光设备的场景下,存在通信延迟、稳定性差、丢包率高等问题。
技术问题
有鉴于此,本申请实施例提供了一种灯光设备联动控制系统及其灯光设备联动控制方法,旨在至少解决现有技术中无法即时体验灯光效果、联动控制过程中存在通信高延迟、稳定性差、丢包率高等问题之一。
技术解决方案
本申请实施例的第一方面提供了一种灯光设备联动控制系统,所述系统包括主灯光设备和至少一个子灯光设备,所述主灯光设备与所述子灯光设备之间通过蓝牙MESH网络广播消息的方式进行联动,其中:
所述主灯光设备在启动联动功能的情况下广播蓝牙消息,其中,所述蓝牙消息中携带有灯光联动数据;
所述子灯光设备接收所述蓝牙消息并对所述蓝牙消息进行解析处理,获取所述蓝牙消息中携带的灯光联动数据,根据所述灯光联动数据与所述主灯光设备进行联动。
本申请实施例的第二方面提供了一种灯光设备联动控制方法,所述方法应用于主灯光设备中,包括:
获取所述主灯光设备需要展示的颜色数据,将所述颜色数据配置为灯光联动数据;
根据所述灯光联动数据生成蓝牙消息,通过蓝牙MESH网络对所述蓝牙消息进行广播处理,以向子灯光设备广播所述蓝牙消息。
结合第二方面,在第二方面的第一种可能实现方式中,获取所述主灯光设备需要展示的颜色数据的步骤之后,还包括:
对所述颜色数据进行子灯光设备匹配处理,以使所述颜色数据具有对应的设备身份标识,将具有设备身份标识的颜色数据配置为灯光联动数据。
结合第二方面或第二方面的第一种可能实现方式,在第二方面的第二种可能实现方式中,获取所述主灯光设备需要展示的颜色数据,将所述颜色数据配置为灯光联动数据的步骤之后,还包括:
对所述灯光联动数据进行加密处理,以使所述灯光联动数据以密文形式存在。
结合第二方面,在第二方面的第三种可能实现方式中,根据所述灯光联动数据生成蓝牙消息,通过蓝牙MESH网络对所述蓝牙消息进行广播处理,以向子灯光设备广播所述蓝牙消息的步骤之前,还包括:
按照预设的功率调整规则调整所述主灯光设备的射频功率,以确定所述主灯光设备的广播距离。
结合第二方面,在第二方面的第四种可能实现方式中,根据所述灯光联动数据生成蓝牙消息,通过蓝牙MESH网络对所述蓝牙消息进行广播处理,以向子灯光设备广播所述蓝牙消息的步骤之前,还包括:
修改所述蓝牙MESH网络在蓝牙通信层中的协议栈参数,其中,所述协议栈参数包括广播间隔参数、广播频点参数、消息转发次数、快速配网参数中的至少一项。
本申请实施例的第三方面提供了一种灯光设备联动控制方法,所述方法应用于子灯光设备中,包括:
接收主灯光设备广播的蓝牙消息;
对所述蓝牙消息进行解析处理,获取所述蓝牙消息中携带的灯光联动数据;
根据所述灯光联动数据生成灯控文件,按照所述灯控文件进行亮灯操作。
结合第三方面,在第三方面的第一种可能实现方式中,对所述蓝牙消息进行解析处理,获取所述蓝牙消息中携带的灯光联动数据的步骤,包括:
对所述蓝牙消息进行来源验证,判断所述蓝牙消息是否来源于所述主灯光设备;
若所述蓝牙消息来源于所述主灯光设备,则根据蓝牙MESH网络对所述消息进行解析处理,获得灯光联动数据密文;
对所述灯光联动数据密文进行解密处理,获得灯光联动数据。
结合第三方面,在第三方面的第二种可能实现方式中,根据所述灯光联动数据生成灯控文件,按照所述灯控文件进行亮灯操作的步骤,包括:
在所述灯控文件中配置基于灯光设备亮度变化的调光曲线,以按照所述调光曲线对所述子灯光设备进行亮灯操作,其中,所述调光曲线中亮度变化幅值与所述子灯光设备的实时亮度值正相关。
本申请实施例的第四方面提供了一种计算机可读存储介质,所述计算机可读存储介质存储有计算机程序,所述计算机程序被处理器执行时实现第二方面或第三方面任意一项提供的灯光设备联动控制方法的各步骤。
有益效果
本申请实施例提供的一种灯光设备联动控制系统及其灯光设备联动控制方法,具有以下有益效果:
本申请提供的灯光设备联动控制系统包括有主灯光设备和至少一个子灯光设备,主灯光设备与子灯光设备之间通过蓝牙MESH网络广播消息的方式进行联动,主灯光设备在启动联动功能的情况下广播携带有灯光联动数据的蓝牙消息,子灯光设备通过接收蓝牙消息并对蓝牙消息进行解析处理,获取蓝牙消息中携带的灯光联动数据,进而根据灯光联动数据与主灯光设备进行联动。该系统通过蓝牙MESH网络广播消息的方式,可以满足用户即装即用和随看随用的即时体验,让用户体验沉浸式的灯光效果,且解决联动控制过程中存在的通信高延迟、稳定性差、丢包率高等问题。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为本申请实施例提供的一种灯光设备联动控制系统的结构示意图;
图2为本申请实施例提供的一种应用于主灯光设备的灯光设备联动控制方法流程图;
图3为本申请实施例提供的一种应用于子灯光设备的灯光设备联动控制方法流程图;
图4为本申请实施例提供的应用于子灯光设备的灯光设备联动控制方法中解析蓝牙消息的一种方法流程图;
图5为本申请实施例提供的一种电子设备的基本结构框图。
本发明的实施方式
为了使本申请的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本申请进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本申请,并不用于限定本申请。
请参阅图1,图1为本申请实施例提供的一种灯光设备联动控制系统的结构示意图。如图1所示,灯光设备联动控制系统种包括一个主灯光设备11和至少一个子灯光设备12。主灯光设备11与子灯光设备12之间通过蓝牙MESH网络进行通信连接,通过广播消息的方式进行联动。其中,MESH网络为无线网格网络。在本实施例中,主灯光设备11在进入TV模式或MUSIC模式后可以启动联动功能。示例性的,可以通过移动终端软件(APP)或遥控器发送启动指令的方式启动主灯光设备11的联动功能,或者可以等待主灯光设备11自动化启动联动功能。在本实施例中,在TV模式或MUSIC模式下,主灯光设备11通过IIC总线与TV屏幕通信,从TV屏幕的颜色传感器中读取颜色数据,并将读取到的颜色数据存储至一数据存储器中。数据存储器中存储的颜色数据被用于灯光联动。示例性的,在本实施例中,主灯光设备11可以通过从该数据存储器中获取颜色数据,并使用微控制处理器(MCU)对该颜色数据进行换算处理,将颜色数据转换成RGB颜色值或幻彩灯带数据值。在主灯光设备11在启动联动功能后,通过蓝牙MESH网络广播蓝牙消息,并将RGB颜色值或幻彩灯带数据值作为灯光联动数据携带在该蓝牙消息中。由于主灯光设备与子灯光设备之间通过蓝牙MESH网络通信连接,子灯光设备12可以通过该蓝牙MESH网络接收到主灯光设备11广播的蓝牙消息。子灯光设备12接收到蓝牙消息后,通过对蓝牙消息进行解析处理,获取蓝牙消息中携带的灯光联动数据,然后根据该灯光联动数据执行相应的亮灯操作,以此实现根据灯光联动数据与主灯光设备12进行联动。
以上可以看出,本申请实施例提供的灯光设备联动控制系统通过蓝牙MESH网络广播消息的方式来实现主灯光设备与子灯光设备之间的消息收发,使得主灯光设备与子灯光设备之间进行灯光联动,可以满足用户即装即用和随看随用的即时体验,让用户体验沉浸式的灯光效果,且解决联动控制过程中存在的通信高延迟、稳定性差、丢包率高等问题。
请参阅图2,图2为本申请实施例提供的一种应用于主灯光设备的灯光设备联动控制方法流程图。详述如下:
S21:获取所述主灯光设备需要展示的颜色数据,将所述颜色数据配置为灯光联动数据;
S22:根据所述灯光联动数据生成蓝牙消息,通过蓝牙MESH网络对所述蓝牙消息进行广播处理,以向子灯光设备广播所述蓝牙消息。
本实施例中,主灯光设备可以数据存储器中获取需要展示的颜色数据。在获得颜色数据后,通过使用微控制处理器(MCU)对该颜色数据进行换算处理,将颜色数据转换成RGB颜色值或幻彩灯带数据值,进而将该RGB颜色值或幻彩灯带数据值配置为用于与子灯光设备联动的灯光联动数据。主灯光设备配置好灯光联动数据后,可以根据该灯光联动数据来生成蓝牙消息,使得生成的蓝牙消息中携带有该灯光联动数据。进而,再通过蓝牙MESH网络对蓝牙消息进行广播处理,将蓝牙消息广播到该蓝牙MESH网络中,由于主灯光设备启动联动功能后,主灯光设备与子灯光设备均处于该蓝牙MESH网络中,子灯光设备可以在该蓝牙MESH网络中监听到主灯光设备广播的蓝牙消息,以此实现向子灯光设备广播蓝牙消息。
本申请的一些实施例中,获取主灯光设备需要展示的颜色数据后,将颜色数据配置为灯光联动数据时,具体可以通过对颜色数据进行子灯光设备匹配处理,以使颜色数据具有对应的设备身份标识,将具有设备身份标识的颜色数据配置为灯光联动数据。示例性的,若颜色数据中只有一种RGB颜色值时,可以获取与主灯光设备联动的所有子灯光设备的设备身份标识,将该RGB颜色值与所有子灯光设备的设备身份标识进行映射关联关系,从而使得该RGB颜色值具有对应的设备身份标识。将该具有设备身份标识的颜色数据配置为灯光联动数据后,主灯光设备与子灯光设备联动时,主灯光设备和所有的子灯光设备都按照该RGB颜色值进行灯光展示。示例性的,若颜色数据中包含有多种RGB颜色值时,可以获取与主灯光设备联动的所有子灯光设备的设备身份标识,将不同的RGB颜色值分别与不同子灯光设备的设备身份标识建立映射关联关系,使得不同的RGB颜色值关联不同的设备身份标识,其中,一个RGB颜色值可以关联一个或多个不同的设备身份标识,从而形成幻彩灯带数据。将该幻彩灯带数据配置为灯光联动数据后,主灯光设备与子灯光设备联动时,不同的子灯光设备按照其各自关联的RGB颜色值进行灯光展示,实现与主灯光设备联动展示幻彩灯光效果。
本申请的一些实施例中,在主灯光设备中还可以设置加密算法用于对数据进行加密。在本实施例中,可以在主灯光设备配置好用于与子灯光设备进行联动的灯光联动数据后,通过加密算法对该灯光联动数据进行加密处理,以使得灯光联动数据以密文形式存在。进而在主灯光设备进行消息广播时,以密文的形式将灯光联动数据携带在蓝牙消息中,从而将灯光联动数据密文广播到蓝牙MESH网络中,以此保证灯光联动数据的安全性。
本申请的一些实施例中,在主灯光设备广播蓝牙消息之前,还可以通过f(add_power)函数设置功率调整规则,在主灯光设备需要与子灯光设备进行联动时,调整该主灯光设备的射频功率,以此确定主灯光设备的广播距离,保证射频的发射范围,避免联动设备的距离过近。在本实施例中,通过f(add_power)函数设置的功率调整规则为将主灯光设备的射频功率调整至最大,以此保证接入联动的子灯光设备的距离。
本申请的一些实施例中,在主灯光设备广播蓝牙消息之前,还可以通过f(adv_set)函数修改蓝牙MESH网络在蓝牙通信层中的协议栈参数,以此实现主灯光设备在蓝牙MESH网络中进行高速广播,并保证广播通信的稳定性。在本实施例中,协议栈参数包括但不限于广播间隔参数、广播频点参数、消息转发次数、快速配网参数等。其中,广播间隔参数包括最小广播间隔和最大广播间隔。快速配网参数包括标准sig mesh协议里NET KEY、APP KEY等参数。可以理解的是,在本实施例中,消息转发次数修改为1次。
本申请的一些实施例中,请参阅图3,图3为本申请实施例提供的一种应用于子灯光设备的灯光设备联动控制方法流程图。详述如下:
S31:接收主灯光设备广播的蓝牙消息;
S32:对所述蓝牙消息进行解析处理,获取所述蓝牙消息中携带的灯光联动数据;
S33:根据所述灯光联动数据生成灯控文件,按照所述灯控文件进行亮灯操作。
本实施例中,在主灯光设备启动联动功能后,主灯光设备与子灯光设备之间通过蓝牙MESH网络建立通信连接。子灯光设备可以通过在该蓝牙MESH网络中进行消息监听来发现主灯光设备广播到该蓝牙MESH网络中的蓝牙消息。子灯光设备在监听到有主灯光设备广播到该蓝牙MESH网络中的蓝牙消息时,即可从该蓝牙MESH网络中获取该监听到的蓝牙消息,以此接收得到主灯光设备广播的蓝牙消息。子灯光设备在接收到蓝牙消息后,可以通过对该蓝牙消息进行解析处理,从而获取该蓝牙消息中携带的灯光联动数据。在本实施例中,在子灯光设备解析得到灯光联动数据后,可以根据该灯光联动数据来生成灯控文件,使得子灯光设备按照该灯控文件来进行亮灯操作。示例性的,在本实施例中,灯控文件中设置有亮灯过程的时长值、灯光颜色值、灯光亮度的目标值等参数。子灯光设备按照灯控文件来进行亮灯操作时,具体是实现在时间从0到达时长值的这段时间控制灯光亮度值由0调到灯光亮度的目标值,并且将灯光配置为灯控文件中设置的灯光颜色值。
本申请的一些实施例中,请参阅图4,图4为本申请实施例提供的应用于子灯光设备的灯光设备联动控制方法中解析蓝牙消息的一种方法流程图。详细如下:
S41:对所述蓝牙消息进行来源验证,判断所述蓝牙消息是否来源于所述主灯光设备;
S42:若所述蓝牙消息来源于所述主灯光设备,则根据蓝牙MESH网络对所述蓝牙消息进行解析处理,获得灯光联动数据密文;
S43:对所述灯光联动数据密文进行解密处理,获得灯光联动数据。
本实施例中,子灯光设备在接收到蓝牙消息后,可以通过识别蓝牙消息的头部字段来对该蓝牙消息进行来源验证,将蓝牙消息的头部字段中表征来源设备的设备身份标识信息与子灯光设备中配网时存储的主灯光设备的设备身份标识进行比对,若设备身份标识一致,则判断该蓝牙消息来源于主灯光设备,否则,判断该蓝牙消息不是来源于主灯光设备。对于不是来源于主灯光设备的蓝牙消息,子灯光设备则将该蓝牙消息丢弃并继续接收其他的蓝牙消息。当蓝牙消息来源于主灯光设备时,根据蓝牙MESH网络对该蓝牙消息进行解析处理。由于主灯光设备在将灯光联动数据携带在蓝牙消息中之前,在主灯光设备端采用预设的加密算法对该灯光联动数据进行加密处理,以使得灯光联动数据以密文的形式传输,以此保证数据的安全性。子灯光设备在获得该蓝牙消息中携带的灯光联动数据密文后,可以通过子灯光设备中与主灯光设备设置的加密算法相对应的解密算法对该灯光联动数据进行解密处理,从而获得子灯光设备可直接使用的灯光联动数据。
本申请的一些实施例中,子灯光设备由脉冲调制(Pulse Width Modulation,简称PWM)驱动来实现亮灯的过程。在本实施例中,可以通过f(led_analysis)函数在子灯光设备生成的灯控文件中配置基于灯光设备亮度变化的调光曲线,以按照该调光曲线对所述子灯光设备进行亮灯操作。其中,调光曲线中亮度变化幅值与所述子灯光设备的实时亮度值正相关。示例性的,在该调光曲线中,可以针对子灯光设备处于低亮度的亮灯过程配置较小的亮度变化幅值,针对子灯光设备处于高亮度的亮灯过程配置较大的亮度变化幅值。例如子灯光设备的亮灯过程为亮度值从0调到1000,针对亮度值从0调到50、从50调到100等区间段,由于子灯光设备处于低亮度,对人眼的视觉冲击比较强,可以针对该区间段设置较小的亮度变化幅值,例如设置亮度变化幅值为2,即子灯光设备从0调到50、从50调到100等亮度值小的区间段的亮灯过程,按照步长为2的亮度值进行调光。针对亮度值从900调到950、从950调到1000等区间段的亮灯过程,由于子灯光设备处于高亮度,对人眼的视觉冲击比较弱,可以针对该区间段设置较大的亮度变化幅值,例如设置亮度变化幅值为20,即子灯光设备从900调到950、从950调到1000等亮度值大的区间段的亮灯过程,按照步长为20的亮度值进行调光。通过该调光曲线,可以使得子灯光设备整个亮灯过程的亮度值变化呈先小后大的曲线增长,避免子灯光设备的亮灯过程出现抖动、闪动的问题,使得子灯光设备展示的灯光效果更好。可以理解的是,在本实施例中,还可以在子灯光设备整个亮灯过程中亮度值大的区间段增大幅值补偿时间,使得子灯光设备整个亮灯过程的亮度值变化呈先慢后快的曲线增长。
可以理解的是,上述实施例中各步骤的序号的大小并不意味着执行顺序的先后,各过程的执行顺序应以其功能和内在逻辑确定,而不应对本申请实施例的实施过程构成任何限定。
本申请的一些实施例中,请参阅图5,图5为本申请实施例提供的一种电子设备的基本结构框图。如图5所示,该实施例的电子设备5包括:处理器51、存储器52以及存储在所述存储器52中并可在所述处理器51上运行的计算机程序53,例如灯光设备联动控制方法的程序。处理器51执行所述计算机程序53时实现上述各个灯光设备联动控制方法各实施例中的步骤。具体请参阅实施例中的相关描述,此处不赘述。
示例性的,所述计算机程序53可以被分割成一个或多个模块(单元),所述一个或者多个模块被存储在所述存储器52中,并由所述处理器51执行,以完成本申请各个灯光设备联动控制方法各实施例中的步骤。所述一个或多个模块可以是能够完成特定功能的一系列计算机程序指令段,该指令段用于描述所述计算机程序53在所述电子设备5中的执行过程。
所述电子设备可包括,但不仅限于,处理器51、存储器52。本领域技术人员可以理解,图5仅仅是电子设备5的示例,并不构成对电子设备5的限定,可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件,例如所述电子设备还可以包括输入输出设备、网络接入设备、总线等。
所述处理器51可以是中央处理单元(Central Processing Unit,CPU),还可以是其他通用处理器、数字信号处理器(Digital Signal Processor,DSP)、专用集成电路(Application Specific Integrated Circuit,ASIC)、现成可编程门阵列(Field-Programmable Gate Array,FPGA)或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件等。通用处理器可以是微处理器或者该处理器也可以是任何常规的处理器等。
所述存储器52可以是所述电子设备5的内部存储单元,例如电子设备5的硬盘或内存。所述存储器52也可以是所述电子设备5的外部存储设备,例如所述电子设备5上配备的插接式硬盘,智能存储卡(Smart Media Card,SMC),安全数字(Secure Digital,SD)卡,闪存卡(Flash Card)等。进一步地,所述存储器52还可以既包括所述电子设备5的内部存储单元也包括外部存储设备。所述存储器52用于存储所述计算机程序以及所述电子设备所需的其他程序和数据。所述存储器52还可以用于暂时地存储已经输出或者将要输出的数据。
需要说明的是,上述各单元之间的信息交互、执行过程等内容,由于与本申请方法实施例基于同一构思,其具体功能及带来的技术效果,具体可参见方法实施例部分,此处不再赘述。
本申请实施例还提供了一种计算机可读存储介质,所述计算机可读存储介质存储有计算机程序,所述计算机程序被处理器执行时实现可实现上述各个方法实施例中的步骤。在本实施例中,所述计算机可读存储介质可以是非易失性,也可以是易失性。
本申请实施例提供了一种计算机程序产品,当计算机程序产品在移动终端上运行时,使得移动终端执行时实现可实现上述各个方法实施例中的步骤。
所属领域的技术人员可以清楚地了解到,为了描述的方便和简洁,仅以上述各功能单元、模块的划分进行举例说明,实际应用中,可以根据需要而将上述功能分配由不同的功能单元、模块完成,以完成以上描述的全部或者部分功能。实施例中的各功能单元、模块可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中,上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。另外,各功能单元、模块的具体名称也只是为了便于相互区分,并不用于限制本申请的保护范围。上述系统中单元、模块的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
所述集成的模块/单元如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本申请实现上述实施例方法中的全部或部分流程,也可以通过计算机程序来指令相关的硬件来完成,所述的计算机程序可存储于一计算机可读存储介质中,该计算机程序在被处理器执行时,可实现上述各个方法实施例的步骤。其中,所述计算机程序包括计算机程序代码,所述计算机程序代码可以为源代码形式、对象代码形式、可执行文件或某些中间形式等。所述计算机可读介质可以包括:能够携带所述计算机程序代码的任何实体或装置、记录介质、U盘、移动硬盘、磁碟、光盘、计算机存储器、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、电载波信号、电信信号以及软件分发介质等。需要说明的是,所述计算机可读介质包含的内容可以根据司法管辖区内立法和专利实践的要求进行适当的增减,例如在某些司法管辖区,根据立法和专利实践,计算机可读介质不包括是电载波信号和电信信号。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详述或记载的部分,可以参见其它实施例的相关描述。
以上所述实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述实施例对本申请进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例技术方案的精神和范围,均应包含在本申请的保护范围之内。

Claims (10)

  1. 一种灯光设备联动控制系统,其特征在于,所述系统包括主灯光设备和至少一个子灯光设备,所述主灯光设备与所述子灯光设备之间通过蓝牙MESH网络广播消息的方式进行联动,其中:
    所述主灯光设备在启动联动功能的情况下广播蓝牙消息,其中,所述蓝牙消息中携带有灯光联动数据;
    所述子灯光设备接收所述蓝牙消息并对所述蓝牙消息进行解析处理,获取所述蓝牙消息中携带的灯光联动数据,根据所述灯光联动数据与所述主灯光设备进行联动。
  2. 一种灯光设备联动控制方法,其特征在于,所述方法应用于主灯光设备中,包括:
    获取所述主灯光设备需要展示的颜色数据,将所述颜色数据配置为灯光联动数据;
    根据所述灯光联动数据生成蓝牙消息,通过蓝牙MESH网络对所述蓝牙消息进行广播处理,以向子灯光设备广播所述蓝牙消息。
  3. 根据权利要求2所述的灯光设备联动控制方法,其特征在于,获取所述主灯光设备需要展示的颜色数据,将所述颜色数据配置为灯光联动数据的步骤,包括:
    对所述颜色数据进行子灯光设备匹配处理,以使所述颜色数据具有对应的设备身份标识,将具有设备身份标识的颜色数据配置为灯光联动数据。
  4. 根据权利要求2或3所述的灯光设备联动控制方法,其特征在于,获取所述主灯光设备需要展示的颜色数据,将所述颜色数据配置为灯光联动数据的步骤之后,还包括:
    对所述灯光联动数据进行加密处理,以使所述灯光联动数据以密文形式存在。
  5. 根据权利要求2所述的灯光设备联动控制方法,其特征在于,根据所述灯光联动数据生成蓝牙消息,通过蓝牙MESH网络对所述蓝牙消息进行广播处理,以向子灯光设备广播所述蓝牙消息的步骤之前,还包括:
    按照预设的功率调整规则调整所述主灯光设备的射频功率,以确定所述主灯光设备的广播距离。
  6. 根据权利要求2所述的灯光设备联动控制方法,其特征在于,根据所述灯光联动数据生成蓝牙消息,通过蓝牙MESH网络对所述蓝牙消息进行广播处理,以向子灯光设备广播所述蓝牙消息的步骤之前,还包括:
    修改所述蓝牙MESH网络在蓝牙通信层中的协议栈参数,其中,所述协议栈参数包括广播间隔参数、广播频点参数、消息转发次数、快速配网参数中的至少一项。
  7. 一种灯光设备联动控制方法,其特征在于,所述方法应用于子灯光设备中,包括:
    接收主灯光设备广播的蓝牙消息;
    对所述蓝牙消息进行解析处理,获取所述蓝牙消息中携带的灯光联动数据;
    根据所述灯光联动数据生成灯控文件,按照所述灯控文件进行亮灯操作。
  8. 根据权利要求7所述的灯光设备联动控制方法,其特征在于,对所述蓝牙消息进行解析处理,获取所述蓝牙消息中携带的灯光联动数据的步骤,包括:
    对所述蓝牙消息进行来源验证,判断所述蓝牙消息是否来源于所述主灯光设备;
    若所述蓝牙消息来源于所述主灯光设备,则根据蓝牙MESH网络对所述消息进行解析处理,获得灯光联动数据密文;
    对所述灯光联动数据密文进行解密处理,获得灯光联动数据。
  9. 根据权利要求7所述的灯光设备联动控制方法,其特征在于,根据所述灯光联动数据生成灯控文件,按照所述灯控文件进行亮灯操作的步骤,包括:
    在所述灯控文件中配置基于灯光设备亮度变化的调光曲线,以按照所述调光曲线对所述子灯光设备进行亮灯操作,其中,所述调光曲线中亮度变化幅值与所述子灯光设备的实时亮度值正相关。
  10. 一种计算机可读存储介质,所述计算机可读存储介质存储有计算机程序,其特征在于,所述计算机程序被处理器执行时实现如权利要求2-6或7-9任意一项所述方法的步骤。
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